Garg Puneet, Ghatmale Prerana, Tarwadi Kirtan, Chavan Sachin
Department of Nanotechnology, Bharati Vidyapeeth Deemed University, College of Engineering, Pune, MH 411043, India.
Biomimetics (Basel). 2017 May 26;2(2):7. doi: 10.3390/biomimetics2020007.
With the advent of nanotechnology, by looking further deep down into the molecular level, today, we are able to understand basic and applied sciences even better than ever before. Not only has nanoscience and nanotechnology allowed us to study the composing structures of materials in detail, it has also allowed us to fabricate and synthesize such nanostructures using top-down and bottom-up approaches. One such field, which has been significantly influenced by the dawn of nanotechnology is biomimetics. With powerful spectroscopic and microscopic tools presenting us with images like double nanostructured pillars on the lotus surface for superhydrophobicity, the conical protuberances of moth eye demonstrating anti-reflection properties and nanostructured spatulae of gecko feet for high adhesivity, we are now able to fabricate these structures in the lab with properties showing close resemblance to their natural counterparts. Here, we present a review of various nanostructures that exist in nature, their fabrication techniques and some of their promising future applications. We hope this review will provide the reader with a basic understanding of what biomimetics is and how nanotechnology has significantly influenced this field.
随着纳米技术的出现,通过进一步深入到分子层面,如今我们对基础科学和应用科学的理解比以往任何时候都更加深刻。纳米科学和纳米技术不仅使我们能够详细研究材料的组成结构,还使我们能够使用自上而下和自下而上的方法制造和合成此类纳米结构。受纳米技术兴起显著影响的一个领域是仿生学。借助强大的光谱和显微镜工具,我们得以看到诸如莲花表面具有超疏水性的双纳米结构柱、具有抗反射特性的蛾眼锥形突起以及具有高粘附性的壁虎脚纳米结构刮刀等图像,现在我们能够在实验室中制造出这些结构,其特性与天然对应物极为相似。在此,我们综述了自然界中存在的各种纳米结构、它们的制造技术以及一些具有前景的未来应用。我们希望这篇综述能让读者对仿生学是什么以及纳米技术如何对该领域产生重大影响有一个基本的了解。